A surgical suction tip comprises a tubular body portion with a hollow tip portion at one end communicating into the body portion, and a cap portion releasably closing the other end, a tubular connecting portion mounted externally on the cap portion communicating through the cap portion into the body portion. A hollow filter member within the body portion defines an annular chamber between the filter member and the body portion and communicating with the tubular connecting portion through the cap portion, a plurality of apertures in the filter member connecting the interior of the filter member with the annular chamber. The body portion has locating means thereon locating one end of the filter member within the body portion, while the other end of the filter member is closed. Waste material flows from the tip portion into the hollow interior of the filter member and then to the annular chamber and to the tubular connecting portion.
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1. A surgical suction tip comprising a tubular body portion having an inner wall surface, a hollow, reduced-diameter tip portion at one end of said body portion and defining therein a bore which communicates into the interior of the body portion, a releasable cap portion closing the other end of the body portion and having an aperture formed therethrough, a tubular connecting portion provided externally of said cap portion into the interior of the body portion and defining therein a bore which communicates through the aperture in the cap into the interior of the body portion, a hollow filter member located within the body portion to define a chamber of generally annular transverse section between the filter member and the inner wall surface of the body portion, the filter member being provided with a plurality of apertures therein interconnecting the interior of the filter member with said annular chamber, and location means integrally formed within the body portion adjacent the tip portion thereof to receive thereon and to locate one end of the filter member within the body portion such that material entering the body portion through the tip portion flows into the hollow interior of the filter member, the other end of the filter member being closed, the annular chamber within the body portion being in communication with the tubular connecting portion by way of said aperture in the cap portion, in which said filter member further comprises a removable end cap located in, to close, the other end of the filter member, said end cap including a tapering annular skirt portion having a free end which is gripped between the other end of the body portion and the cap portion to locate said end cap in an operative position within the body portion, the skirt portion of the end cap defining therein a plurality of apertures which interconnect the annular chamber within the body portion with the tubular connecting portion by way of the aperture in the cap portion.
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The present invention relates to surgical suction tips such as are used to remove waste matter from the body during surgery.
In orthopaedic surgery, for example when replacing a hip joint, it is often necessary to clean out the centre of a bone, primarily the femur, prior to fitting the prosthesis, and it is common practice to utilise a suction tip and associated suction source to remove unwanted gelatinous blood, bone splinters, tissue and the like.
Such arrangements commonly comprise a suction source acting through a container and a length of tubing to the hand-held suction tip itself whereby solid and liquid waste are drawn through the suction tip, along the tubing and into the container.
However, the nature of the waste material so removed from a patient is such that the tip itself and the tubing therefrom are easily clogged by bits of tissue and other matter. It is then necessary to clean out the suction line or the suction tip before the operation can be continued and this is clearly a time-consuming and messy process.
It has been proposed to provide a surgical suction tip incorporating a removable filter element such as disclosed in U.S. Pat. No. 4468217. However, the filter unit itself is of relatively complex construction, embodying on it, as well as the filter element,, means for locating the input end of the filter element in position within the associated housing and closure means for enabling insertion and removal of the filter unit into and from the housing.
Furthermore, the waste material is drawn into an annular chamber within the housing before passing through the wall of the filter into the interior thereof and thence from the suction tip. Thus it will be appreciated that the solid matter of the waste material is retained within the annular chamber of the housing rather than in the filter element itself, and any clogging up of the suction tip requires not only removal and cleaning of the filter element but also cleaning out of the housing.
It would be desirable to be able to provide a surgical suction tip less likely to clog up and more easily cleaned than heretofore.
According to the present invention there is provided a surgical suction tip comprising a tubular body portion having a hollows, reduced-diameter tip portion at one end thereof the bore of which communicates into the interior of the body portion, a releasable cap portion closing the other end of the body portion and provided with a tubular connecting portion externally thereof the bore of which communicates through an aperture in the cap portion into the interior of the body portion, and a hollow filter member located within the body portion to define a chamber of generally annular transverse section between the filter member and the inner wall of the body portion, the filter member being provided with a plurality of apertures therein interconnecting the interior of the filter member with said annular chamber, characterised in that the body portion has integrally formed therein, adjacent the tip portion thereof, location means to receive thereon and locate one end of the filter member within the body portion such that material entering the body portion through the tip portion flows into the hollow interior of the filter member, the other end of the filter member being closed, and the annular chamber within the body portion being in communication with the tubular connecting portion by way of said aperture in the cap portion.
It will thus be appreciated that liquid and solid matter enter the surgical suction tip through the tip portion thereof and are drawn into the interior of the filter member. The liquid content thereof continues to flow through the apertures in the filter member into the annular chamber and thence through the tubular connecting portion for collection, while the solid matter is retained within the hollow interior of the filter member.
As soon as the filter member is blocked by the solid matter, it can readily be removed from the body portion, cleaned out and replaced for further use of the surgical suction tip.
Thus the surgical suction tip of the invention provides a controlled build-up of solid matter in a predetermined location combined with ready disposal of said matter quickly and with little mess.
Preferably the filter location means comprises a tubular member extending co-axially within the body portion, the bore thereof forming a continuation of the bore through the tip portion, the one end of the filter member being a push-fit over said tubular member.
The tubular member may be provided with a plurality of circumferentially-spaced, axially extending ribs on the outer wall thereof for abutment by the one end of the filter member to locate said filter member axially relative to the tubular member and therefore to the body portion.
Conveniently the filter member further comprises a removable end cap located in, to close, the other end of the filter member, said end cap including a tapering annular skirt portion the free end of which is gripped between the other end of the body portion and the cap portion to locate said end cap in an operative position within the body portion, a plurality of apertures through the skirt portion of the end cap interconnecting the annular chamber within the body portion with the tubular connecting portion by way of the aperture in the cap portion.
Preferably the cap portion is internally threaded to be a screw-fit on the correspondingly externally threaded other end of the body portion.
The surgical suction tip may be of a rigid transparent plastics material such as styrene acrylic nitrite, and may be provided with a plurality of tubular extension pieces of different shapes and lengths each of which is a friction push-fit into the free end of the tip portion thereof.
The drawing is a longitudinal section through a surgical suction tip according to the invention.
Referring to the drawing, the illustrated surgical suction tip comprises a tubular body portion indicated generally at 2 and including a cylindrical main extent 4 and a tapering tip portion 6 at one end thereof having a central bore 8 therethrough communicating into the interior of the main extent 4. The main extent 4 of the body portion 2 tapers slightly with its internal diameter increasing gradually from the one end thereof to the other end thereof.
The other end of the main extent 4 of the body portion 2 is externally threaded at 10 and is closed by means of an internally-threaded end cap 12. Said end cap 12 has integrally formed therewith an external, axially extending connecting tube 14 the bore 16 in which communicates through the end cap 12. A plurality of circumferentially-spaced strengthening fins 18 are provided between the connecting tube 14 and the end cap 12.
Integrally formed within the one end of the body portion 2 is a tubular locating sleeve 20 extending from the tip portion 6 into the main extent 4, the bore 22 of said locating sleeve 20 forming an axial continuation of the bore 8 of the tip portion 6 and interconnecting said bore 8 with the hollow interior of the main extent 4 of the body portion 2.
The free end of the sleeve 20 is chamferred, while a plurality of circumferentially spaced, axially extending ribs 24 are provided on the external surface of the sleeve 20 to terminate short of the free end of said sleeve 20.
The surgical tip further comprises a hollow filter element 26 of generally cylindrical shape, the filter element tapering slightly from one end to the other with the wider one end extent 28 being a push fit over the sleeve 20 to locate said element laterally in position within the body portion 2. The free end of the filter element 26 abuts the ends of the ribs 24 on the sleeve 20 to determine the axial operative position of the filter element 26 within the body portion 2.
In said operative position, the filter element 26 defines, together with the inner wall of the body portion 2, an annular chamber 30 within the body portion 2, a plurality of holes 31 through the cylindrical wall of the filter element 26 interconnecting the hollow interior of said filter element 26 with said annular chamber 30. The bore 8 of the tip portion 6 communicates into said hollow interior of the filter element 26 by way of the bore 22 in the tubular locating sleeve 20. The tapering natures of the main extent 4 of the body portion 2 and the filter element 26 are such that the transverse cross-section area of the annular chamber 30 increases in size from the one end of the main extent 4 to the other end thereof.
A cap portion indicated generally at 32 is a close push-fit into the narrower other end extent 34 of the filter element 26 such that an end wall 36 of the cap portion seals and closes said other end of the filter element 26.
Integrally formed with the end wall 36 of the cap portion 32 is an annular, outwardly-tapering skirt portion 38 the free end of which is provided with an annular flange 40 adapted to locate the cap portion in the open other end of the main extent of the body portion 2 and to be gripped in sealing engagement between the end cap 12 and the body portion 2 when the end cap 12 is screwed onto said body portion 2.
The skirt portion 38 is provided with a plurality, for example four, of circumferentially spaced apertures 42 therethrough to interconnect the annular chamber 30 within the body portion 2 with the bore 16 of the connecting tube 16.
Conveniently the surgical suction tip, including the filter element 26, is moulded from a rigid, translucent plastics material such as styrene acrylic nitrite, while the tip is provided with a plurality of relatively flexible tubular extension pieces of different lengths and shapes one end of each of which is adapted to be a close push fit in the free end of the tip portion 6 of the surgical suction tip. One such extension piece is shown at 44.
The described device operates as follows. A length of tubing attaching to the connecting tube 14 feeds to a container (not shown) to which is also connected a suction source whereby said source exerts a suction effect on the extension piece 44 located in the tip portion 6 of the surgical tip.
Thus extraneous waste material adjacent the free end of the extension piece 44 is drawn into the surgical tip along paths defined by the arrows in the drawing, through the length of tubing connected to the tube 14 and is collected in the container.
Clearly the liquid content of said waste matter can pass through the holes 31 in the filter element 26 and can be drawn into the container. However, gelatinous or solid matter such as bone spliters, tissue and the like, which heretofore have been prone to clogging up established suction tip systems, cannot pass through the holes 31 and are therefore collected within the hollow interior of the filter element 26, the build-up of such matter beginning at the other end of the filter element 26 adjacent the end wall 36 of the cap portion 32 and continuing along the filter element 26 towards the one end thereof.
Once the filter element is itself substantially full of waste matter and liquid flow therethrough is substantially prevented, the end cap 12 is unscrewed from the body portion 2, the filter element 26 and attached cap portion 32 are withdrawn therefrom, the cap portion 32 is removed from the filter element 26 and the filter element is cleaned out.
Assembly of the surgical tip is the reverse of the above procedure, with the sleeve 20 serving to guide the filter element 26 onto its operative position within the body portion 2.
Thus it will be appreciated that a surgical suction tip according to the invention encourages blocking thereof but in a controlled manner and in a predetermined location, and whereby unblocking of the system can be effected quickly and with little mess, requiring only removal, cleaning and replacement of the filter element 26.
Patent | Priority | Assignee | Title |
10098991, | Mar 14 2011 | Neuro Enterprises, LLC | Self-cleaning surgical suction device and method of use |
10172983, | Dec 14 2012 | SURLUTIONS PTY LTD | Surgical suction device |
10639046, | Jan 26 2018 | Smith & Nephew, Inc. | Tissue collection and delivery device and methods of use thereof |
10898621, | Feb 21 2012 | SOLVENTUM INTELLECTUAL PROPERTIES COMPANY | Multi-orientation canister for use with a reduced pressure treatment system |
11191885, | Dec 06 2018 | Joshua C., Arnone; Steven J., Apperson; Gregg D., Scheller | Flow control system |
11259862, | Aug 05 2009 | Rocin Laboratories, Inc. | Coaxial-driven tissue aspiration instrument system |
11609160, | Dec 16 2008 | Nico Corporation | System and method of taking and collecting tissue cores for treatment |
11801060, | May 07 2015 | ZIMMER, INC | Systems and methods for bone and tissue harvesting |
11806467, | Jun 14 2018 | Filter assembly, surgical suction system, and method of making a bone-repair element with autologous tissue inclusions | |
12171482, | Aug 05 2009 | Rocin Laboratories, Inc. | Bariatric surgery operating room with a laparoscopic-based visceral fat tissue aspiration system configured and operational for treating metabolic syndrome in human patients on an ambulatory basis |
12178494, | Aug 05 2009 | ROCIN LABORATORIES, INC | Laparoscopic-based method of safely removing visceral fat tissue deposits from within the mesenteric region of a human patient suffering from metabolic syndrome |
5123840, | May 14 1990 | Surgical apparatus | |
5368560, | Mar 29 1993 | NICHE MEDICAL INC | Suction nozzle |
5464397, | Jan 11 1994 | SUMMIT GROUPS, INC ; POWERS DENTAL & MEDICAL TECHNOLOGIES, INC | Bacteria valve |
5499970, | Aug 23 1994 | ZIMMER ORTHOPAEDIC SURGICAL PRODUCTS, INC | Debridement tip |
5597385, | Nov 21 1994 | MOERKE CUSTOM PRODUCTS, INC | Filtered exhaust wand for removing laser smoke |
5630939, | Sep 15 1995 | 3M Innovative Properties Company | Filter assembly device for use in surgical aspirated suction |
5744360, | Jul 01 1994 | Edwards Lifesciences Corporation | Methods for harvesting adipose tissue containing autologous microvascular endothelial cells |
5766134, | Jul 18 1995 | ATRION MEDICAL PRODUCTS, INC | Autogenous bone specimen collector |
5779649, | Dec 17 1996 | Pabban Development, Inc. | Surgical suction wand with filter |
5807353, | Sep 16 1996 | Aspiration device with separating element | |
5868701, | Mar 19 1996 | Medical suctioning bacteria valve and related method | |
6020196, | May 09 1996 | Edwards Lifesciences Corporation | Devices for harvesting and homogenizing adipose tissue containing autologous endothelial cells |
6083175, | Sep 20 1994 | ASTRA TECH AB | Method and apparatus for collecting fragments of bone tissue |
6406454, | Mar 14 2000 | MEDECO, INC; MEDECON, INC | Surgical suction probe system with an easily cleaned internal filter |
6468225, | Sep 20 1994 | ASTRA TECH AB | Method and apparatus for collecting bone tissue fragments |
6908455, | Mar 14 2000 | MEDECON, INC | Surgical suction probe system with an easily cleaned internal filter |
7214059, | Mar 06 2001 | Bone collecting device | |
7556622, | May 18 2005 | Hologic, Inc; Biolucent, LLC; Cytyc Corporation; CYTYC SURGICAL PRODUCTS, LIMITED PARTNERSHIP; SUROS SURGICAL SYSTEMS, INC ; Third Wave Technologies, INC; Gen-Probe Incorporated | Selectively openable tissue filter |
7837630, | Nov 06 2000 | Hologic, Inc; Biolucent, LLC; Cytyc Corporation; CYTYC SURGICAL PRODUCTS, LIMITED PARTNERSHIP; SUROS SURGICAL SYSTEMS, INC ; Third Wave Technologies, INC; Gen-Probe Incorporated | Fluid control element for biopsy apparatus |
7883476, | May 23 2001 | Hologic, Inc; Biolucent, LLC; Cytyc Corporation; CYTYC SURGICAL PRODUCTS, LIMITED PARTNERSHIP; SUROS SURGICAL SYSTEMS, INC ; Third Wave Technologies, INC; Gen-Probe Incorporated | Selectively detachable outer cannula hub |
7918835, | Aug 21 2006 | KPR U S , LLC | Compliant guard for use with an aspiration instrument |
8109886, | Nov 06 2000 | Hologic, Inc; Biolucent, LLC; Cytyc Corporation; CYTYC SURGICAL PRODUCTS, LIMITED PARTNERSHIP; SUROS SURGICAL SYSTEMS, INC ; Third Wave Technologies, INC; Gen-Probe Incorporated | Biopsy apparatus |
8167818, | Nov 06 2000 | Hologic, Inc; Biolucent, LLC; Cytyc Corporation; CYTYC SURGICAL PRODUCTS, LIMITED PARTNERSHIP; SUROS SURGICAL SYSTEMS, INC ; Third Wave Technologies, INC; Gen-Probe Incorporated | Biopsy apparatus with vacuum relief |
8187204, | Oct 01 2007 | Hologic, Inc; Biolucent, LLC; Cytyc Corporation; CYTYC SURGICAL PRODUCTS, LIMITED PARTNERSHIP; SUROS SURGICAL SYSTEMS, INC ; Third Wave Technologies, INC; Gen-Probe Incorporated | Surgical device and method for using same |
8202229, | Oct 01 2007 | Hologic, Inc; Biolucent, LLC; Cytyc Corporation; CYTYC SURGICAL PRODUCTS, LIMITED PARTNERSHIP; SUROS SURGICAL SYSTEMS, INC ; Third Wave Technologies, INC; Gen-Probe Incorporated | Surgical device |
8465471, | Aug 05 2009 | ROCIN LABORATORIES, INC | Endoscopically-guided electro-cauterizing power-assisted fat aspiration system for aspirating visceral fat tissue within the abdomen of a patient |
8485986, | Jun 08 2010 | Merit Medical Systems, Inc. | Biopsy collection device and related methods |
8529468, | Jul 01 2009 | Hologic, Inc; Biolucent, LLC; Cytyc Corporation; CYTYC SURGICAL PRODUCTS, LIMITED PARTNERSHIP; SUROS SURGICAL SYSTEMS, INC ; Third Wave Technologies, INC; Gen-Probe Incorporated | Surgical system |
8574222, | Aug 25 2011 | H & M Innovations, LLC | Anti-clog suction tip apparatus and method |
8574223, | Aug 05 2009 | Rocin Laboratories, Inc. | Method of collecting and in situ processing of aspirated fat tissue sampled from a human patient during tissue aspiration operations |
8636722, | Aug 25 2011 | HENSLER SURGICAL PRODUCTS, LLC | Anti-clog suction tip apparatus and methods |
8764679, | Nov 06 2000 | Suros Surgical Systems, Inc. | Biopsy apparatus |
8808200, | Oct 01 2007 | Suros Surgical Systems, Inc. | Surgical device and method of using same |
8815099, | Jan 21 2014 | Myromed, LLC | Devices and methods for filtering and/or collecting tissue |
8840632, | Jun 30 2010 | Myromed, LLC | Devices and methods for cutting tissue |
8845618, | Aug 25 2011 | H & M Innovations, LLC | Anti-clog suction tip apparatus and method |
8858464, | Jul 01 2009 | Suros Surgical Systems, Inc. | Surgical system |
8882793, | Jun 30 2010 | Myromed, LLC | Devices and methods for cutting tissue |
8932233, | May 21 2004 | DEVICOR MEDICAL PRODUCTS, INC | MRI biopsy device |
8986222, | Nov 06 2000 | Hologic, Inc. | Biopsy apparatus |
8986285, | Mar 14 2011 | Neuro Enterprises, LLC | Self-cleaning surgical suction device |
9144636, | Mar 14 2011 | Neuro Enterprises, LLC | Self-cleaning surgical suction device with interchangeable tips |
9392999, | May 21 2004 | Devicor Medical Products, Inc. | MRI biopsy device |
9504453, | May 21 2004 | Devicor Medical Products, Inc. | MRI biopsy device |
9532796, | Jun 30 2010 | Myromed, LLC | Devices and methods for cutting tissue |
9638770, | May 21 2004 | DEVICOR MEDICAL PRODUCTS, INC | MRI biopsy apparatus incorporating an imageable penetrating portion |
9744274, | Aug 05 2009 | Rocin Laboratories, Inc. | Tissue sampling, processing and collection device and method of using same |
9757184, | Aug 05 2009 | Rocin Laboratories, Inc. | In-line fat tissue sampling, processing and collection device |
9763731, | Feb 10 2012 | Myromed, LLC | Vacuum powered rotary devices and methods |
9770289, | Feb 10 2012 | Myromed, LLC | Vacuum powered rotary devices and methods |
9795365, | May 21 2004 | Devicor Medical Products, Inc. | MRI biopsy apparatus incorporating a sleeve and multi-function obturator |
9814810, | Aug 05 2009 | Rocin Laboratories, Inc. | Tissue sampling, collection, and processing system |
9821096, | Aug 05 2009 | Rocin Laboratories, Inc. | Tissue sampling, processing and injection syringe device and methods of using the same |
9833279, | Aug 05 2009 | Rocin Laboratories, Inc. | Twin-cannula tissue aspiration instrument system |
9925314, | Aug 05 2009 | Rocin Laboratories, Inc. | Method of performing intra-abdominal tissue aspiration to ameliorate the metabolic syndrome, or abdominal obesity |
9987401, | Feb 21 2012 | SOLVENTUM INTELLECTUAL PROPERTIES COMPANY | Multi-orientation canister for use with a reduced pressure treatment system |
D365146, | Mar 18 1994 | ZIMMER ORTHOPAEDIC SURGICAL PRODUCTS, INC | Wound debridement tip |
D617447, | Nov 10 2009 | Surgical suction tip |
Patent | Priority | Assignee | Title |
1693741, | |||
3317043, | |||
3469706, | |||
3785380, | |||
4468217, | Jul 09 1982 | ANSPACH EFFORT, INC THE A CORP OF FL | Surgical suction tip with filter |
4654141, | Jan 12 1983 | H-TECH, INC | In-line filter for a low pressure pool cleaning system |
Executed on | Assignor | Assignee | Conveyance | Frame | Reel | Doc |
Mar 31 1990 | BROOKE, GERARD MICHAEL | TECHNIKO MEDICAL LIMITED | ASSIGNMENT OF ASSIGNORS INTEREST | 005289 | /0167 | |
Feb 26 1992 | TECHNIKO MEDICAL LIMITED | NIKO SURGICAL LIMITED | ASSIGNMENT OF ASSIGNORS INTEREST | 006038 | /0748 | |
Jan 04 2000 | NIKO SURGICAL LTD | MAERSK MEDICAL HOLDINGS LIMITED | CHANGE OF NAME SEE DOCUMENT FOR DETAILS | 016050 | /0824 | |
May 09 2003 | MAERSK MEDICAL HOLDINGS LIMITED | UNOMEDICAL HOLDINGS LIMITED | CHANGE OF NAME SEE DOCUMENT FOR DETAILS | 016290 | /0693 | |
Aug 31 2005 | UNOMEDICAL HOLDINGS LIMITED | Unomedical Limited | ASSIGNMENT OF ASSIGNORS INTEREST SEE DOCUMENT FOR DETAILS | 016500 | /0879 |
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